IN-C33(X)TL(X) Series
3535 High Power LED
Features
Description
•
3535 High Power LED
The IN-C33(X)TL(X) is a high-power LED. It is a SMD
•
ROHS and REACH Compliant
•
MSL3 qualified according to J-STD 020
•
ESD 2KV
type LED which can be used in various applications.
Applications
•
Portable lighting
•
Indoor/ Outdoor lighting
•
Commercial lighting
•
Industrial lighting
Outline
60D
120D
90D
3.5x3.5x2.8
3.5x3.5x2.0
3.5x3.5x2.34
IN-C33BTL(X)
IN-C33CTL(X)
IN-C33ETL(X)
Recommended Solder Pattern
(Suggest Stencil t=0.12 mm)
Recommended PCB Solder PAD
Recommended Stencil Pattern(Hatched Area is Opening)
Figure 1. IN-C33(X)TL(X) Recommended Solder Pattern
*Note: All dimensions are in mm, tolerance is ±0.13mm
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IN-C33(X)TL(X) Series
3535 High Power LED
Package Dimensions
(All dimensions are in mm, tolerance is ±0.13mm)
IN-C33BTL(X)
IN-C33ETL(X)
IN-C33CTL(X)
Figure 2. IN-C33(X)TL(X) Series Package Dimension
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IN-C33(X)TL(X) Series
3535 High Power LED
Absolute Maximum Rating( Ta=25oC)
Characteristics
Symbol
Min.
Typical
Max.
Unit
350
700
mA
1000
mA
DC Forward Current1
IF
Pulse Forward Current2
IPF
Forward Voltage - Blue/Green/ Royal Blue
VF
2.8
3.8
V
Forward Voltage - Red/ Yellow/ Amber/ Deep Red
VF
1.4
2.8
V
Reverse Voltage
VR
Leakage Current (5V)
IR
Junction Temperature3
Tj
Storage Temperature Range
Tstg
Soldering Temperature
Tsol
Thermal Resistance Junction /
Solder Point
Rth
Viewing Angle
2θ1/2
-5
V
10
℃
115
-40
-
100
8
60/90/120
℃
℃
260
6
μA
12
℃/W
Deg
Notes
1. For other ambient, limited setting of current will depend on de-rating curves.
2. D=0.01s duty 1/10.
3. When drive on maximum current , Tj must be kept below 115℃
4. Viewing angle(2θ1/2) ±10°
ESD Precaution
ATTENTION: Electrostatic Discharge (ESD) protection
The symbol above denotes that ESD precaution is needed. ESD protection for GaP and AlGaAs based chips is necessary even
though they are relatively safe in the presence of low static-electric discharge. Parts built with AlInGaP, GaN, or/and InGaN based
chips are STATIC SENSITIVE devices. ESD precaution must be taken during design and assembly.
If manual work or processing is needed, please ensure the device is adequately protected from ESD during the process.
Please be advised that normal static precautions should be taken in the handling and assembly of this device to prevent damage or degradation which
may be induced by electrostatic discharge (ESD).
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IN-C33(X)TL(X) Series
3535 High Power LED
Electronic-Optical Characteristics
Spectrum Distribution
Forward Current VS. Forward Voltage (Ta=25℃)
Relative luminous Flux vs. Forward Current (Ta=25℃)
(Blue/ Green / Royal Blue)
(Blue/ Green / Royal Blue)
Forward Current VS. Forward Voltage (Ta=25℃)
Relative luminous Flux vs. Forward Current (Ta=25℃)
(Red/ Yellow / Deep Red)
(Red/ Amber / Deep Red)
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IN-C33(X)TL(X) Series
3535 High Power LED
Typical Spatial Distribution
Product List
Part Number
IN-C33(X)TLB
IN-C33(X)TLG
IN-C33(X)TLR
IN-C33(X)TLY
IN-C33(X)TLDR
IN-C33(X)TLRB
IN-C33(X)TLA
Color
Blue
Green
Red
Yellow
Deep Red
Royal Blue
Amber
Luminous Flux
(lm@350mA)
Min
Max
25
35
90
110
40
60
50
70
15
30
15
30
45
75
Wavelength (nm)
460-470
515-535
620-630
585-595
650-670
450-460
600-610
Forward Voltage (V)
Min
2.8
3.0
1.8
1.8
1.4
2.8
1.8
Max
3.6
3.6
2.6
2.6
2.6
3.6
2.8
Bin Code information
■Forward Voltage Binning
Bin Code (@350mA)
Min. VF(V)
Max. VF(V)
V14
1.4
1.6
V16
1.6
1.8
V18
1.8
2.0
V20
2.0
2.2
V22
2.2
2.4
V24
2.4
2.6
V26
2.6
2.8
V28
2.8
3.0
V30
3.0
3.2
V32
3.2
3.4
V34
3.4
3.6
V36
3.6
3.8
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IN-C33(X)TL(X) Series
3535 High Power LED
■Flux Binning
Color
Blue
Green
Red
Yellow
Deep Red
Royal Blue
Amber
Luminous Flux (lm@350mA)
Group
Min
Max
B15
15
20
B20
20
25
B25
25
30
G80
80
90
G90
90
100
GH1
100
110
R40
40
45
R45
45
50
R50
50
55
R55
55
60
Y50
50
55
Y55
55
60
Y60
60
65
Y65
65
70
R15
15
20
R20
20
25
R25
25
30
B15
15
20
B20
20
25
B25
25
30
A45
45
50
A50
50
55
A55
55
60
A60
60
65
A65
65
70
A70
70
75
Note:
1.
Tolerance of luminous flux (Φv) ±5%.
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IN-C33(X)TL(X) Series
3535 High Power LED
■Wavelength Binning
Color
Wavelength (Wd nm@350mA)
Group
Min
Max
B1
460
465
B2
465
470
G1
515
520
G2
520
525
G3
525
530
G4
530
535
R1
620
625
R2
625
630
Y1
585
590
Y2
590
595
DR1
650
660
DR2
660
670
RB1
450
455
RB2
455
460
A1
600
605
A2
605
610
Blue
Green
Red
Yellow
Deep Red
Royal Blue
Amber
Note:
1. Tolerance of Wavelength ±nm.
2. Wavelength of Deep Red is meaning peak wavelength only.
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IN-C33(X)TL(X) Series
3535 High Power LED
Ordering Information
Orderable
Part Number
Luminous Flux
Color
Angle
(lm@350mA)
Min
Max
60
25
35
90
25
IN-C33CTLB
120
IN-C33BTLG
Wavelength
(nm)
Forward Voltage (V)
Min
Max
460-470
2.8
3.6
35
460-470
2.8
3.6
25
35
460-470
2.8
3.6
60
90
110
515-535
3.0
3.6
90
90
110
515-535
3.0
3.6
IN-C33CTLG
120
90
110
515-535
3.0
3.6
IN-C33BTLR
60
40
60
620-630
1.8
2.6
90
40
60
620-630
1.8
2.6
IN-C33CTLR
120
40
60
620-630
1.8
2.6
IN-C33BTLY
60
50
70
585-595
1.8
2.6
90
50
70
585-595
1.8
2.6
IN-C33CTLY
120
50
70
585-595
1.8
2.6
IN-C33BTLDR
60
15
30
650-670
1.4
2.6
90
15
30
650-670
1.4
2.6
IN-C33CTLDR
120
15
30
650-670
1.4
2.6
IN-C33BTLRB
60
15
30
450-460
2.8
3.6
90
15
30
450-460
2.8
3.6
IN-C33CTLRB
120
15
30
450-460
2.8
3.6
IN-C33BTLA
60
45
75
600-610
1.8
2.8
90
45
75
600-610
1.8
2.8
120
45
75
600-610
1.8
2.8
IN-C33BTLB
IN-C33ETLB
IN-C33ETLG
IN-C33ETLR
IN-C33ETLY
IN-C33ETLDR
IN-C33ETLRB
IN-C33ETLA
IN-C33CTLA
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Blue
Green
Red
Yellow
Deep Red
Royal Blue
Amber
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IN-C33(X)TL(X) Series
3535 High Power LED
Label Specifications
Inolux P/N:
I
N
-
C
3
Material
C=
Ceramic
Type
Inolux
SMD
3
Package
(X)
T
L
Variation
Orientation
Current
33B = 3.5 x 3.5, 60 Deg.
33C = 3.5 x 3.5, 120 Deg.
33E = 3.5 x 3.5, 90 Deg.
T = Top
Mount
L=
350mA
(X)
Lens
Color
(Blank)
= Clear
B = 470nm
G = 520nm
R = 630nm
Y = 590nm
DR = 660nm
RB = 450nm
A = 605nm
-
X X X X
Customized
Stamp-off
Lot No.:
Z
Internal
Tracker
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2
0
1
7
Year (2017, 2018, …..)
Page 9
01
24
001
Month
Date
Serial
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IN-C33(X)TL(X) Series
3535 High Power LED
Reflow Soldering
Soldering Iron
Basic Spec is ≦ 4 sec. when 260°C (+10°C ➔ -1 second). Power dissipation of Iron should be
less than 15W. Surface temperature should be under 230°C
Rework
Rework should be completed within 4 second under 245°C
Notes
1.
Do not stress the silicone resin while it is exposed to high temperature.
2. The number of reflow process should not exceed 3 times.
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IN-C33(X)TL(X) Series
3535 High Power LED
Packing
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IN-C33(X)TL(X) Series
3535 High Power LED
Notes:
1. Each Reel (minimum number of pieces is 100 and maximum is 500 (60D)/1000 (120D) is packed in a moisture-proof
bag along with 2 packs of desiccant and a humidity indicator card;
2. A maximum of 5 moisture-proof bags are packed in an inner box (size: 240mm x 200mm x 105mm ± 5mm)
3. A maximum of 4 inner boxes are put in an outer box (size: 410mm x 255mm x 230mm ± 5mm)
4. Part No., Lot No., quantity should be indicated on the label of the moisture-proof bag and the cardboard
box.
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IN-C33(X)TL(X) Series
3535 High Power LED
Precautions
1. Recommendation for using LEDs
1.1 The lens of LEDs should not be exposed to dust or debris. Excessive dust and debris
may cause a drastic decrease in the luminosity.
1.2 Avoid mechanical stress on LED lens.
1.3 Do not touch the LED lens surface. It would affect the optical performance of the LED
due to the LED lens’ damage.
1.4 Pick & place tools are recommended for the remove of LEDs from the factory tape & reel
packaging
2. Pick & place nozzle
The pickup tool was recommended and shown as below
3. Lens handling
Please follow the guideline to pick LEDs
3.1 Use tweezers to pick LEDs
3.2 Do not touch the lens by using tweezers
3.3 Do not touch lens with fingers
3.4 Do not apply more than 4N of lens (400g) directly onto the lens
4. Lens cleaning
In the case which a small amount of dirt and dust particles remain on the lens surface,
a suitable cleaning solution can be applied.
4.1 Try a gentle wiping with dust-free cloth
4.2 If needed, use dust-free cloth and isopropyl alcohol to gently clean the dirt from the
lens surface.
4.3 Do not use other solvents as they may directly react with the LED assembly
4.4 Do not use ultrasonic cleaning which will damage the LEDs
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IN-C33(X)TL(X) Series
3535 High Power LED
Test Items and Results of Reliability
Test Item
Duration/
Number of
Cycle
Damage
↑↓5min
125℃ 30min
100 cycles
0/22
Ta=100℃
1000 hrs
0/22
1000 hrs
0/22
1000 hrs
0/22
1000 hrs
0/22
1000 hrs
0/22
1000 hrs
0/22
3 Times
0/22
Test Conditions
Reference
–40℃ 30min
Thermal Shock
High Temperature
Storage
Humidity Heat Storage
Ta=85℃
RH=85%
Low Temperature Storage Ta=-40℃
Life Test
High Humidity Heat Life
Test
High Temperature Life
Ta=25℃
If=350mA
85℃ RH=85%
If=350mA
Ta=85℃
Test
ESD(HBM)
2KV at 1.5kΩ;100pf
AECQ101
EIAJ ED-4701
200 201
EIAJ ED-4701
100 103
EIAJ ED-4701
200 202
Tested with Inolux
standard
Tested with Inolux
standard
Tested with Inolux
standard
MIL-STD-883
Criteria for Judging the Damage
Item
Symbol
Condition
Forward Voltage
VF
If=350mA
Reverse Current
IR
VR =5V
Luminous Intensity
Iv
If=350mA
Criteria for Judgment
Min
Max
-
USL1 ×1.1
-
100μA
LSL2
×0.7
-
Notes:
1. USL: Upper specification level
2. LSL: Lower specification level
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IN-C33(X)TL(X) Series
3535 High Power LED
Revision History
Changes since last revision
Initial Release
Revise Format
Revise the Drawing
Page
4
Version No.
1.0
1.1
1.2
Revision Date
04-17-2018
10-18-2018
06-19-2021
DISCLAIMER
INOLUX reserves the right to make changes without further notice to any products herein to improve reliability, function or design. INOLUX does not
assume any liability arising out of the application or use of any product or circuit described herein; neither does it convey any license under its patent
rights, nor the rights of others.
LIFE SUPPORT POLICY
INOLUX’s products are not authorized for use as critical components in life support devices or systems without the express written approval of the
President of INOLUX or INOLUX CORPORATION. As used herein:
1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life,
and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to
result in a significant injury of the user.
2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the
failure of the life support device or system, or to affect its safety or effectiveness.
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